Transient flow and thermodynamics analysis of a scroll compressor based on CFD

Ying-li Zhang, Xiang-ji Yue, Fan Yang, Jia-nan Ding, Jia-hua Hong, De-chun Ba
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Abstract

The scroll compressor is a kind of positive-displacement compressor applied in refrigeration systems, heat pump systems, and air conditioner systems. Using the spring smoothing method and considering the heat transfer, the numerical simulation model of the scroll compressor is established under standard working conditions. The results show that the CFD model is well validated by the experiment result. The compressor performance and the working process are analyzed. The pre-compression and the over-compression phenomenon are also studied. Moreover, the temperature distribution and velocity distribution of gas flow in the compressor are illustrated. The result shows that the pre-compression can improve the performance of the scroll compressor and the optimization of the suction channel geometry can provide a smoother suction process. Under the combined effect of the pre-compression and heat transfer, the refrigerating capacity is increased by approximately 0.54 kW and the volume efficiency is increased by approximately 2.2%. The additional power loss due to over-compression is 47.6615 W, and the setting of over-compression discharges can reduce the pressure and power loss. This study is helpful to the performance prediction and the structural optimization of the scroll compressor.
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基于 CFD 的涡旋式压缩机瞬态流动和热力学分析
涡旋式压缩机是一种正排量压缩机,应用于制冷系统、热泵系统和空调系统。采用弹簧平滑法并考虑传热因素,建立了标准工况下涡旋压缩机的数值模拟模型。结果表明,CFD 模型得到了实验结果的充分验证。分析了压缩机的性能和工作过程。还研究了预压缩和过压缩现象。此外,还说明了压缩机中气体流的温度分布和速度分布。结果表明,预压缩可以改善涡旋式压缩机的性能,而吸气通道几何形状的优化可以提供更平滑的吸气过程。在预压缩和热传递的共同作用下,制冷量增加了约 0.54 千瓦,容积效率提高了约 2.2%。过压缩造成的额外功率损失为 47.6615 W,而设置过压缩排气可减少压力和功率损失。这项研究有助于涡旋式压缩机的性能预测和结构优化。
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来源期刊
CiteScore
3.30
自引率
5.90%
发文量
114
审稿时长
5.4 months
期刊介绍: The Journal of Power and Energy, Part A of the Proceedings of the Institution of Mechanical Engineers, is dedicated to publishing peer-reviewed papers of high scientific quality on all aspects of the technology of energy conversion systems.
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